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首页> 外文期刊>International Journal of Pharmaceutics >Fabrication of the polyphosphates patched cellulose sulfate-chitosan hydrochloride microcapsules and as vehicles for sustained drug release
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Fabrication of the polyphosphates patched cellulose sulfate-chitosan hydrochloride microcapsules and as vehicles for sustained drug release

机译:多磷酸盐的制备蛋白质硫酸盐 - 壳聚糖微胶囊和持续药物释放的车辆

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摘要

Polyphosphates are important polyanionic electrolytes that play a major role in stabilization and consolidation of colloids surface and interior microstructures. In this study, the polyelectrolyte complexes (PEC) microcapsules (sodium cellulose sulfate-chitosan hydrochloride, sample 1), and the patched ones via sodium tripolyphosphate (sample 2), sodium pyrophosphate (sample 3) and sodium hexametaphosphate (sample 4) were fabricated under mild conditions. The effects of polyphosphates on the formation of the PEC microcapsules were investigated systematically. Scanning electron microscope (SEM) and confocal laser scanning microscope (CLSM) observation showed that both of the sample 2 and sample 3 had more compact interior microstructures with higher fluor-escence intensity, compared with the sample 4 with macroporous ones and sample 1 with irregular ones. Fourier transform-infrared spectroscopy (FT-IR) and thermogravimetric analysis (TGA) showed the electrostatic interactions occurred among the -NH3+ groups, -SO3- groups, HP3O104- groups, P2O74- groups and H2PO4- groups, and the sample 2 and sample 3 had a more thermal stability comparatively. The sample microcapsules showed good capacity of drug loading and encapsulation efficiency (max. 66.9 +/- 4.6% and 74.2 +/- 5.1%). In the in vitro release studies showed that the sample 2 and sample 3 had a larger accumulative drug release rate of 5-aminosalicylic acid (5-ASA) at the same time point and released completely at 12 h; the drug release mechanisms analysis indicated that the sample 1 and sample 3 were mainly diffusion controlled, while the sample 2 and sample 4 were followed the mechanism of non-Fickian transport. Under the polyphosphate's consolidation, the PEC microcapsules fabricated with sustained drug release profiles could be used as the promising drug vehicles.
机译:多磷酸盐是重要的多变电极电解质,其在稳定和固结胶体表面和内部微观结构中起主要作用。在本研究中,通过三聚磷酸钠(样品2),焦磷酸钠(样品3)和六偏磷酸钠(样品4)制备聚电解质配合物(PEC)微胶囊(PEC)微胶囊(磷酸钠硫酸钠 - 壳聚糖 - 邻氯化钠 - 盐酸钙,样品1)和丙烯酸钠(样品4)在温和的条件下。多磷酸盐对PEC微胶囊形成的影响得到了系统研究。扫描电子显微镜(SEM)和共聚焦激光扫描显微镜(CLSM)观察表明,与样品4的样品4与具有不规则的样品4相比,样品2和样品3的样品2和样品3的内部微观结构具有更高的荧光强度。那些。傅里叶变换 - 红外光谱(FT-IR)和热重分析(TGA)显示了-NH3 +基团,-SO3 - 基团,HP3O104-基团,P2O74-基团和H2PO4-基团的静电相互作用,以及样品2和样品3相对较高的热稳定性。样品微胶囊显示出良好的药物负载和封装效率(最大66.9 +/- 4.6%和74.2 +/- 5.1%)。在体外释放研究中,样品2和样品3在同一时间点的5-氨基水杨酸(5-ASA)具有较大的累积药物释放速率并完全在12小时内释放;药物释放机制分析表明样品1和样品3主要是扩散控制,而样品2和样品4遵循非Fickian运输的机制。在多磷酸盐的固结下,用持续的药物释放型材制造的PEC微胶囊可用作有前途的毒品车辆。

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